173 Results for "

CSF1

" in MedChemExpress (MCE) Product Catalog:
Products (173)

173 Results for "CSF1" in MCE Product Catalog:

  • Targets Recommended:
Cat. No.: HY-109190R
CAS No.: 1619931-27-9
Synonyms: GB002 (Standard); PK10571 (Standard)
Research Areas:  

Cardiovascular Disease

Seralutinib (Standard) is the analytical standard of Seralutinib (HY-109190). This product is intended for research and analytical applications. Seralutinib (GB002) is an inhaled PDGFRα and PDGFRβ inhibitor. Seralutinib also targets to CSF1R and c-KiT with IC50s of 8 nM and 14 nM, respectively. Seralutinib (GB002) is used in the study for pulmonary arterial hypertension [1] .
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Cat. No.: HY-117273
CAS No.: 942507-42-8
Purity:  99.77%
Target:  

Raf Autophagy

Research Areas:  

Cancer

AZ304 is an ATP-competitive dual BRAF kinase inhibitor, potently inhibits wild type BRAF, V600E mutant BRAF and wild type CRAF, with IC50s of 79 nM, 38 nM and 68 nM, respectively. AZ304 also has significant effect on other kinases, such as p38 (IC50, 6 nM), CSF1R (IC50, 35 nM). Anti-tumor activity [1].
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Cat. No.: HY-174366
CAS No.: 2256080-83-6
Target:  

c-Fms PI3K

Research Areas:  

Cancer

JMC14 is a selective and orally active PI3Kδ and CSF1R inhibitor with IC50 values of 12 nM and 143 nM, respectively. JMC14 preferentially inhibits PI3Kδ-mediated signaling at the cellular level. JMC14 demonstrates potent antitumor activity against B-cell lymphomas and triple-negative breast cancer (TNBC) in both in vitro and vivo studies. JMC14 can be used for the study of antitumor immunity [1].
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Cat. No.: HY-19772
CAS No.: 1018673-42-1
Synonyms: ESM-HDAC391; CHR-5154; HDAC-IN-3
Target:  

HDAC c-Fms

Research Areas:  

Inflammation/Immunology

GSK3117391 (ESM-HDAC391; CHR-5154; HDAC-IN-3) is an orally active HDAC inhibitor with a IC50 of 55 nM. Using esterase-sensitive motif technology, GSK3117391 is selectively converted into its active acid metabolite HDAC189 in cells expressing carboxylesterase-1. GSK3117391 induces sustained global protein acetylation in monocytes, inhibits the production of proinflammatory cytokines, depletes circulating monocytes, downregulates the expression of CSF1R, and inhibits monocyte adhesion and differentiation. GSK3117391 can be used in the research of chronic inflammatory diseases [1].
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Cat. No.: HY-187646
CAS No.: 2231259-57-5
Target:  

Drug Derivative

Research Areas:  

Cancer

IACS-9439-Cl is a derivative of IACS-9439. IACS-9439 is an orally active and selective colony-stimulating factor 1 receptor (CSF1R) inhibitor with a Kd of 1 nM. IACS-9439-Cl reduces the population of tumor-associated macrophages. IACS-9439-Cl promotes the polarization of macrophages toward the M1 anti-tumor phenotype and decreases the M2 pro-tumor phenotype, thereby exerting a tumor growth inhibitory effect. IACS-9439-Cl can be used in cancer-related research [1].
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Cat. No.: HY-152830
CAS No.: 2394874-66-7
Purity:  99.51%
Synonyms: Q702
Target:  

c-Fms TAM Receptor MHC

Research Areas:  

Cancer

Adrixetinib (Q702) is an orally active triple inhibitor against CSF1R, Mer, and Axl, with Kd values of 8.7 nM, 0.8 nM, and 0.3 nM, respectively. Adrixetinib acts as a potent immune modulator that remodels the tumor microenvironment. Adrixetinib increases the abundance of M1 macrophages and CD8⁺ T cells, while decreasing the levels of M2 macrophages and myeloid-derived suppressor cells (MDSCs). Adrixetinib upregulates the expression of MHC class I and E-cadherin in tumor cells. Adrixetinib shows remarkable antitumor efficacy in syngeneic mouse tumor models. Adrixetinib is suitable for the research of breast cancer, renal adenocarcinoma, colon carcinoma, and melanoma [1] .
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Cat. No.: HY-114153R
CAS No.: 1303420-67-8
PLX5622 (Standard) is the analytical standard of PLX5622 (HY-114153). This product is intended for research and analytical applications. PLX5622 is a highly selective brain penetrant and orally active CSF1R inhibitor (IC50=0.016 μM; Ki=5.9 nM). PLX5622 allows for extended and specific microglial cells elimination, preceding and during pathology development. PLX5622 is an ideal choose for microglia function research in healthy or diseased states. PLX5622 has been verified by MedChemExpress, which demonstrates desirable microglia depletion efficiency in mice. PLX5622 is predominantly administered via ad libitum diets with a dose of 1200 ppm [1] .
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Cat. No.: HY-152830A
Purity:  99.82%
Synonyms: Q702 TFA
Target:  

c-Fms TAM Receptor MHC

Research Areas:  

Cancer

Adrixetinib (Q702) TFA is an orally active triple inhibitor against CSF1R, Mer, and Axl, with Kd values of 8.7 nM, 0.8 nM, and 0.3 nM, respectively. Adrixetinib TFA acts as a potent immune modulator that remodels the tumor microenvironment. Adrixetinib TFA increases the abundance of M1 macrophages and CD8⁺ T cells, while decreasing the levels of M2 macrophages and myeloid-derived suppressor cells (MDSCs). Adrixetinib TFA upregulates the expression of MHC class I and E-cadherin in tumor cells. Adrixetinib TFA shows remarkable antitumor efficacy in syngeneic mouse tumor models. Adrixetinib TFA is suitable for the research of breast cancer, renal adenocarcinoma, colon carcinoma, and melanoma [1] .
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Cat. No.: HY-159838
CAS No.: 2222689-47-4
Synonyms: EI‐1071
Target:  

c-Fms Amyloid-β

Research Areas:  

Neurological Disease Cancer

Enrupatinib (EI‐1071) is a potent, orally active, CNS-penetrant and selective CSF1R inhibitor. Enrupatinib inhibits macrophage proliferation and osteoclast differentiation in vitro. Enrupatinib preserves microglia distal to plaques. Enrupatinib mitigates Alzheimer's disease (AD)-related pathologies by reducing neuroinflammation, preserving neuronal integrity, lowering disease-associated microglia gene expression, and enhancing cognitive function in 5xFAD and J20 mouse models. Enrupatinib reduces tumor-associated macrophage infiltration and enhances antitumor activity of anti-PD-1 antibody in murine colorectal cancer and breast cancer models. Enrupatinib can be used for the research of AD, colorectal cancer, and breast cancer [1] .
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Cat. No.: HY-183931
CAS No.: 1839155-15-5
Target:  

RET VEGFR Trk Receptor c-Fms

Research Areas:  

Cancer

NPA101.3 is an orally active RET receptor tyrosine kinase and VEGFR2 inhibitor (RET IC50 = 0.001 μM, RET V804M IC50 = 0.008 μM, VEGFR2 IC50 = 0.003 μM). NPA101.3 inhibits purified TRKA (IC50 = 32 nM) and CSF1R (IC50 = 46 nM). NPA101.3 completely suppresses tumor formation in RET /C634Y-transformed cells and also attenuates tumor formation in HRAS /G12V-transformed cells. NPA101.3 can be used in the research of RET-driven cancers [1].
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Cat. No.: HY-101034
CAS No.: 2081093-21-0
Synonyms: CHMFL-ABL-KIT-155
Research Areas:  

Cancer

CHMFL-ABL/KIT-155 (CHMFL-ABL-KIT-155; compound 34) is a highly potent and orally active type II ABL/c-KIT dual kinase inhibitor (IC50s of 46 nM and 75 nM, respectively), and it also presents significant inhibitory activities to BLK (IC50=81 nM), CSF1R (IC50=227 nM), DDR1 (IC50=116 nM), DDR2 (IC50=325 nM), LCK (IC50=12 nM) and PDGFRβ (IC50=80 nM) kinases. CHMFL-ABL/KIT-155 (CHMFL-ABL-KIT-155) arrests cell cycle progression and induces apoptosis [1].
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Cat. No.: HY-164529
CAS No.: 2121503-76-0
Target:  

Raf Ras MEK ERK VEGFR Tie c-Fms

Research Areas:  

Cancer

SJ-C1044 is an orally available pan-RAF inhibitor with immunomodulatory and anti-tumor activities. SJ-C1044 inhibits wild-type BRAF, wild-type CRAF, and BRAF (V600E) with IC50 values ??of 331, 257, and 187 nM, respectively. SJ-C1044 inhibits tumor cell proliferation by inhibiting kras activation and MEK-ERK phosphorylation. In addition, SJ-C1044 also has a certain inhibitory effect on VEGFR2, TIE2, and CSF1R, with IC50 values ??of 100, 23, and 235 nM, respectively. SJ-C1044 improves the tumor immune microenvironment by inhibiting angiogenesis and regulating macrophage function. SJ-C1044 can be used in the study of colorectal cancer [1].
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Cat. No.: HY-145601
CAS No.: 2230490-29-4
Purity:  98.45%
Synonyms: TT 00420
Target:  

Aurora Kinase FGFR VEGFR

Research Areas:  

Cancer

Tinengotinib (TT00420) is an orally active, spectrally selective small molecule kinase inhibitor targeting Aurora A/B (IC50=1.2-3.3 nM), FGFR1/2/3 (IC50=1.5-3.5 nM), VEGFRs, JAK1/2 and CSF1R. Tinengotinib blocks Aurora kinase-mediated cell cycle progression (inducing G2/M arrest), inhibits FGFR/JNK-JUN signaling pathway and activates MEK/ERK-dependent apoptotic pathway. Tinengotinib has the activity of anti-tumor proliferation, inducing apoptosis, inhibiting angiogenesis and regulating tumor microenvironment. Tinengotinib can be used in the study of triple-negative breast cancer (TNBC), gallbladder cancer and tumor immune microenvironment [1] .
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